Hartmann Florian, Penkner Lukas, Danninger Doris, Arnold Nikita, Kaltenbrunner Martin
Division of Soft Matter Physics Institute for Experimental Physics Johannes Kepler University Altenberger Str. 69 Linz 4040 Austria.
Soft Materials Lab Linz Institute of Technology Johannes Kepler University Altenberger Str. 69 Linz 4040 Austria.
Adv Sci (Weinh). 2020 Dec 23;8(3):2003104. doi: 10.1002/advs.202003104. eCollection 2021 Feb.
Compact and entirely soft optics with tunable and adaptive properties drive the development of life-like soft robotic systems. Yet, existing approaches are either slow, require rigid components, or use high operating voltages of several kilovolts. Here, soft focus-tunable lenses are introduced, which operate at practical voltages, cover a high range of adjustable focal lengths, and feature response times in the milliseconds range. The nature-inspired design comprises a liquid-filled elastomeric lens membrane, which is inflated by zipping electroactive polymers to tune the focal length. An analytic description of the tunable lens supports optimized designs and accurate prediction of the lens characteristics. Focal length changes between 22 and 550 mm (numerical aperture 0.14-0.005) within 260 ms, equal in performance to human eyes, are demonstrated for a lens with 3 mm aperture radius, while applying voltages below 500 V. The presented model, design rules, and fabrication methods address central challenges of soft electrostatic actuators and optical systems, and pave the way toward autonomous bio-inspired robots and machines.
具有可调谐和自适应特性的紧凑且完全柔软的光学器件推动了逼真的软机器人系统的发展。然而,现有的方法要么速度慢,需要刚性部件,要么使用几千伏的高工作电压。在此,引入了软焦点可调透镜,其在实际电压下工作,涵盖高范围的可调焦距,并且响应时间在毫秒范围内。这种受自然启发的设计包括一个充满液体的弹性体透镜膜,通过拉伸电活性聚合物使其膨胀来调节焦距。对可调透镜的解析描述有助于优化设计并准确预测透镜特性。对于孔径半径为3毫米的透镜,在低于500伏的电压下,在260毫秒内焦距可在22至550毫米之间变化(数值孔径为0.14 - 0.005),性能与人眼相当。所提出的模型、设计规则和制造方法解决了软静电致动器和光学系统的核心挑战,并为自主的仿生机器人和机器铺平了道路。